Specific rhizosphere bacterial and fungal groups respond differently to elevated atmospheric CO(2).
about
Our microbial selves: what ecology can teach usThe phylogenetic composition and structure of soil microbial communities shifts in response to elevated carbon dioxide.Specific impacts of beech and Norway spruce on the structure and diversity of the rhizosphere and soil microbial communitiesInteractive effects of preindustrial, current and future atmospheric CO2 concentrations and temperature on soil fungi associated with two Eucalyptus species.Changes in the microbial community structure of bacteria, archaea and fungi in response to elevated CO(2) and warming in an Australian native grassland soil.Impact of elevated CO₂ and N addition on bacteria, fungi, and archaea in a marsh ecosystem with various types of plants.The impact of elevated carbon dioxide on the phosphorus nutrition of plants: a reviewResponse of archaeal communities in the rhizosphere of maize and soybean to elevated atmospheric CO2 concentrations.The spatial factor, rather than elevated CO₂, controls the soil bacterial community in a temperate Forest EcosystemCommon bacterial responses in six ecosystems exposed to 10 years of elevated atmospheric carbon dioxide.Differential growth responses of soil bacterial taxa to carbon substrates of varying chemical recalcitranceFungal communities respond to long-term CO2 elevation by community reassemblyConversion from long-term cultivated wheat field to Jerusalem artichoke plantation changed soil fungal communities.Microbial rescue to plant under habitat-imposed abiotic and biotic stresses.Shifts in microbial communities in soil, rhizosphere and roots of two major crop systems under elevated CO2 and O3.Effects of elevated CO2 on communities of denitrifying bacteria and methanogens in a temperate marsh microcosm.Soil Conditions Rather Than Long-Term Exposure to Elevated CO2 Affect Soil Microbial Communities Associated with N-Cycling.Plant diversity improves protection against soil-borne pathogens by fostering antagonistic bacterial communitiesEcology. Bad news for soil carbon sequestration?Vanillic acid changed cucumber (Cucumis sativus L.) seedling rhizosphere total bacterial, Pseudomonas and Bacillus spp. communities.Plant rhizosphere influence on microbial C metabolism: the role of elevated CO2, N availability and root stoichiometryDiversity and Applications of Endophytic Actinobacteria of Plants in Special and Other Ecological Niches
P2860
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P2860
Specific rhizosphere bacterial and fungal groups respond differently to elevated atmospheric CO(2).
description
2009 nî lūn-bûn
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2009年の論文
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2009年学术文章
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2009年学术文章
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2009年学术文章
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2009年学术文章
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name
Specific rhizosphere bacterial ...... tly to elevated atmospheric CO
@nl
Specific rhizosphere bacterial ...... to elevated atmospheric CO(2).
@en
type
label
Specific rhizosphere bacterial ...... tly to elevated atmospheric CO
@nl
Specific rhizosphere bacterial ...... to elevated atmospheric CO(2).
@en
prefLabel
Specific rhizosphere bacterial ...... tly to elevated atmospheric CO
@nl
Specific rhizosphere bacterial ...... to elevated atmospheric CO(2).
@en
P2860
P356
P1433
P1476
Specific rhizosphere bacterial ...... to elevated atmospheric CO(2)
@en
P2093
George A Kowalchuk
Johannes A van Veen
P2860
P2888
P304
P356
10.1038/ISMEJ.2009.65
P577
2009-06-18T00:00:00Z
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P6179
1015455282